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An explosive antisense RNA strategy for inhibition of a lactococcal bacteriophage
1Department of Food Science, North Carolina State University, Raleigh, North Carolina 27695-7624, USA.
Abstract:
The coding regions of six putative open reading frames (ORFs) identified near the phage phi31 late promoter and the right cohesive end (cos) of lactococcal bacteriophage phi31 were used to develop antisense constructs to inhibit the proliferation of phage phi31. Two middle-expressed ORFs (ORF 1 and ORF 2) and four late-expressed ORFs (ORF 3 through ORF 6) were cloned individually between the strong Lactobacillus P6 promoter and the T7 terminator (T(T7)) to yield a series of antisense RNA transcripts. When expressed on a high-copy-number vector from a strong promoter, the constructs had no effect on the efficiency of plaquing (EOP) or the plaque size of phage phi31. To increase the ratio of antisense RNA to the targeted sense mRNA appearing during a phage infection, the antisense cassettes containing the late-expressed ORFs (ORF 3 through ORF 6) were subcloned to pTRK360, a low-copy-number vector containing the phage phi31 origin of replication, ori31. ori31 allows for explosive amplification of the low-copy-number vector upon phage infection, thereby increasing levels of antisense RNA transcripts later in the lytic cycle. In addition, the presence of ori31 also lowers the burst size of phage phi31 fourfold, resulting in fewer sense, target mRNAs being expressed from the phage genome. The combination of ori31 and P6::anti-ORF 4H::T(T7) resulted in a threefold decrease in the EOP of phage phi31 (EOP = 0.11 +/- 0.03 [mean +/- standard deviation]) compared to the presence of ori31 alone (EOP = 0.36). One-step growth curves showed that expression of anti-ORF 4H RNA decreased the percentage of successful centers of infection (75 to 80% for ori31 compared to 35 to 45% for ori31 plus anti-ORF 4H), with no further reduction in burst size. Growth curves performed in the presence of varying levels of phage phi31 showed that ori31 plus anti-ORF 4H offered significant protection to Lactococcus lactis, even at multiplicities of infection of 0.01 and 0.1. These results illustrate a successful application of an antisense strategy to inhibit phage replication in the wake of recent unsuccessful reports.
Insights
This study developed antisense constructs to inhibit lactococcal bacteriophage phi31 proliferation. A modified vector significantly reduced phage plaque formation and protected Lactococcus lactis, demonstrating a successful antisense strategy.
Area of Science:
- Microbiology
- Molecular Biology
- Bacteriophage Research
Background:
- Lactococcal bacteriophages pose a significant threat to dairy fermentation processes.
- Antisense RNA technology offers a potential strategy for phage control.
- Previous attempts to inhibit phage phi31 using antisense constructs were unsuccessful.
Purpose of the Study:
- To develop and evaluate novel antisense constructs for inhibiting lactococcal bacteriophage phi31 replication.
- To enhance the efficacy of antisense RNA by utilizing the phage phi31 origin of replication (ori31).
- To assess the protective effect of the optimized antisense strategy on Lactococcus lactis.
Main Methods:
- Cloning of open reading frames (ORFs) from phage phi31 into antisense constructs.
- Subcloning of antisense cassettes into a low-copy-number vector (pTRK360) containing ori31.
- Assessing phage inhibition through efficiency of plaquing (EOP) and plaque size measurements.
- Analyzing phage replication dynamics using one-step growth curves and growth curves at varying multiplicities of infection.
Main Results:
- Antisense constructs alone showed no effect on phage phi31 efficiency.
- The combination of ori31 and an anti-ORF 4H antisense cassette significantly reduced EOP (threefold decrease).
- Expression of anti-ORF 4H RNA decreased successful centers of infection and offered significant protection to Lactococcus lactis, even at low multiplicities of infection.
Conclusions:
- The study successfully demonstrates a viable antisense strategy for inhibiting phage phi31 proliferation.
- The integration of the phage phi31 origin of replication (ori31) is crucial for enhancing antisense RNA efficacy.
- This approach provides a promising method for protecting Lactococcus lactis against phage infections in industrial settings.